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    • 93. 发明申请
    • Device and method for water treatment by foaming
    • 通过发泡水处理的装置和方法
    • US20030164340A1
    • 2003-09-04
    • US10240538
    • 2003-05-01
    • Armand LeJeune
    • C02F001/40
    • B03D1/1418B03D1/1431B03D1/1462C02F1/24C02F1/38C02F1/78
    • The invention relates to apparatus for treating water by skimming, the apparatus comprising: a reaction chamber (8); injector means (4) for delivering the water for treatment via an injection orifice into the reaction chamber; means (20) for forming microbubbles of gas in the water to be treated; and condensation means (10) for collecting the resulting foam, the apparatus being characterized by the fact that the microbubbles are injected into the reaction chamber (8) together with the water for treatment. The invention also provides a method of treating water by skimming, in which: the water for treatment is injected into a reaction chamber (8); microbubbles of gas are formed in the water for treatment; and the foam that is produced is separated from the water for treatment, the method being characterized by the fact that the microbubbles are injected into the reaction chamber (8) together with the water for treatment.
    • 本发明涉及通过撇取处理水的装置,该装置包括:反应室(8); 喷射器装置(4),用于将经由喷射孔进行处理的水输送到反应室中; 用于在待处理的水中形成气体微泡的装置(20); 以及用于收集所得泡沫的冷凝装置(10),该装置的特征在于将微泡与水一起注入到反应室(8)中进行处理。 本发明还提供了一种通过撇取处理水的方法,其中:将处理水注入反应室(8)中; 在水中形成微气泡,用于处理; 并且将生产的泡沫与用于处理的水分离,该方法的特征在于将微泡与水一起注入到反应室(8)中以进行处理。
    • 95. 发明授权
    • Systems and methods for separation of organics from fluids
    • 有机物与液体分离的系统和方法
    • US06491826B1
    • 2002-12-10
    • US09677657
    • 2000-10-04
    • Neil Helwig
    • Neil Helwig
    • C02F124
    • C02F1/24A01K63/04B01D17/0205B01D17/0217B01D17/047B03D1/028B03D1/1418B03D1/1462B03D1/245B03D1/26C02F1/20C02F1/78C02F2209/40C02F2209/42C02F2301/024C02F2303/12
    • A system for facilitating the separation of materials dissolved from a fluid. The system includes an apparatus for separating proteins and other organics from fluid is provided. The apparatus includes a column having an interior chamber extending between a first end and a second end of the column. The apparatus also includes an inlet tangentially positioned relative to the interior chamber, so as to induce a cyclonic flow as fluid enters into the interior chamber. The apparatus further includes an injection port through which bubbles may be introduced into the fluid flow within the interior chamber. As the bubbles ascend materials dissolved in the fluid adhere to the bubbles an get carried upward towards the surface level of the fluid. Foam generated by the coalescing bubbles may be collected in a trough provided about the first end of the column and may be directed thereinto by a deflector.
    • 用于促进从流体中溶解的材料分离的系统。 该系统包括用于将蛋白质和其它有机物与液体分离的装置。 该装置包括具有在柱的第一端和第二端之间延伸的内室的柱。 该装置还包括相对于内部腔室切向定位的入口,以便当流体进入内部腔室时引起气旋流。 该装置还包括一个注入口,通过该注入口可以将气泡引入内腔内的流体流中。 当溶解在流体中的气泡上升的气泡粘附到气泡上时,向上朝向流体的表面水平传送。 由聚结气泡产生的泡沫可以收集在围绕柱的第一端设置的槽中,并且可以由偏转器引导到其中。
    • 96. 发明申请
    • System and method to improve flotation systems
    • 改善浮选系统的系统和方法
    • US20010032812A1
    • 2001-10-25
    • US09759669
    • 2001-01-12
    • Dwain E. MorseWade O. MorseThomas G. MatherlyEddie Dean Hendrickson
    • B01D017/038
    • B01D19/0057B01D19/0042B03B1/00B03D1/1412B03D1/1418B03D1/1431B03D1/1462B04C3/00B04C7/00C02F1/24
    • A separation system is disclosed for use with a treatment tank, such as a flotation or decant tank, to separate particles and/or gases from a liquid stream. The system is coupled to a liquid source comprising a suspension solution. The system includes a hydrocyclone system that directs the solution stream through a first chamber or passage in a generally helical fashion along a cylindrical wall where bubbles-to-particle aggregates are formed and chemicals can be mixed and activated. A second chamber encloses the outlet of the hydrocyclone and may take many forms, including a generally concentric or parabolic form, and acts to decelerate the liquid and deliver the liquid to a third chamber from which bubbles escape the liquid. The liquid drops from the third chamber into the treatment tank in a manner which only minimally disturbs the liquid already in the tank.
    • 公开了用于与诸如浮选或倾析罐的处理槽一起使用以从液体流分离颗粒和/或气体的分离系统。 该系统耦合到包括悬浮液的液体源。 该系统包括水力旋流器系统,其将溶液流沿着圆柱形壁以大致螺旋方式引导第一室或通道,其中形成气泡与粒子的聚集体,并且化学物质可以混合和活化。 第二腔室包围水力旋流器的出口并且可以具有许多形式,包括大致同心或抛物线形式,并且用于使液体减速并将液体输送到第三室,气泡从该液体逸出。 液体以最小程度地扰乱已经在罐中的液体的方式从第三室滴入处理槽中。